BPG is committed to discovery and dissemination of knowledge
Cited by in CrossRef
For: Nie QH, Luo XD, Hui WL. Advances in clinical diagnosis and treatment of severe acute respiratory syndrome. World J Gastroenterol 2003; 9(6): 1139-1143 [PMID: 12800213 DOI: 10.3748/wjg.v9.i6.1139]
URL: https://www.wjgnet.com/1007-9327/full/v9/i6/1139.htm
Number Citing Articles
1
Ming Guan, Hsiao Ying Chen, Phuay Heng Tan, Shuo Shen, Phuay-Yee Goh, Yee-Joo Tan, Peow Hoon Pang, Yang Lu, Priscilla Yiquan Fong, Daria Chin. Use of Viral Lysate Antigen Combined with Recombinant Protein in Western Immunoblot Assay as Confirmatory Test for Serodiagnosis of Severe Acute Respiratory SyndromeClinical and Vaccine Immunology 2004; 11(6): 1148 doi: 10.1128/CDLI.11.6.1148-1153.2004
2
Ming Guan, Hsiao Ying Chen, Shen Yun Foo, Yee-Joo Tan, Phuay-Yee Goh, Shock Hwa Wee. Recombinant Protein-Based Enzyme-Linked Immunosorbent Assay and Immunochromatographic Tests for Detection of Immunoglobulin G Antibodies to Severe Acute Respiratory Syndrome (SARS) Coronavirus in SARS PatientsClinical and Vaccine Immunology 2004; 11(2): 287 doi: 10.1128/CDLI.11.2.287-291.2004
3
Hong Thi Cam Thai, Mai Quynh Le, Cuong Duc Vuong, Manmohan Parida, Harumi Minekawa, Tsugunori Notomi, Futoshi Hasebe, Kouichi Morita. Development and Evaluation of a Novel Loop-Mediated Isothermal Amplification Method for Rapid Detection of Severe Acute Respiratory Syndrome CoronavirusJournal of Clinical Microbiology 2004; 42(5): 1956 doi: 10.1128/JCM.42.5.1956-1961.2004
4
Xinsheng Zhang, Konstantin Alekseev, Kwonil Jung, Anastasia Vlasova, Nagesh Hadya, Linda J. Saif. Cytokine Responses in Porcine Respiratory Coronavirus-Infected Pigs Treated with Corticosteroids as a Model for Severe Acute Respiratory SyndromeJournal of Virology 2008; 82(9): 4420 doi: 10.1128/JVI.02190-07
5
PA Thomas. SEVERE ACUTE RESPIRATORY SYNDROMEIndian Journal of Medical Microbiology 2003; 21(3): 152 doi: 10.1016/S0255-0857(21)03064-4
6
Arun Kumar, Asmita Deka Dey, Tapan Behl, Swati Chadha, Vishal Aggarwal. Exploring the multifocal therapeutic approaches in COVID-19: A ray of hopeInternational Immunopharmacology 2021; 90: 107156 doi: 10.1016/j.intimp.2020.107156
7
Manuel Rojas, Yhojan Rodríguez, Diana M. Monsalve, Yeny Acosta-Ampudia, Bernardo Camacho, Juan Esteban Gallo, Adriana Rojas-Villarraga, Carolina Ramírez-Santana, Juan C. Díaz-Coronado, Rubén Manrique, Ruben D. Mantilla, Yehuda Shoenfeld, Juan-Manuel Anaya. Convalescent plasma in Covid-19: Possible mechanisms of actionAutoimmunity Reviews 2020; 19(7): 102554 doi: 10.1016/j.autrev.2020.102554
8
Ming Guan, Kwok Hung Chan, J. S. Malik Peiris, See Wai Kwan, Siu Yan Lam, Chiu Mei Pang, Ka Wing Chu, Kit Man Chan, Hsiao Ying Chen, Ewe Beng Phuah, Caiqin Jane Wong. Evaluation and Validation of an Enzyme-Linked Immunosorbent Assay and an Immunochromatographic Test for Serological Diagnosis of Severe Acute Respiratory SyndromeClinical and Vaccine Immunology 2004; 11(4): 699 doi: 10.1128/CDLI.11.4.699-703.2004
9
Petrungaro Annamaria, Quartarone Eugenia, Sciarrone Paolo. Anti-SARS-CoV-2 hyperimmune plasma workflowTransfusion and Apheresis Science 2020; 59(5): 102850 doi: 10.1016/j.transci.2020.102850
10
Tugce N. Yigenoglu, Naim Ata, Fevzi Altuntas, Semih Bascı, Mehmet Sinan Dal, Serdal Korkmaz, Sinem Namdaroglu, Abdulkadir Basturk, Tuba Hacıbekiroglu, Mehmet H. Dogu, İlhami Berber, Kursat Dal, Mehmet A. Erkurt, Burhan Turgut, Mustafa Mahir Ulgu, Osman Celik, Ersan Imrat, Suayip Birinci. The outcome of COVID‐19 in patients with hematological malignancyJournal of Medical Virology 2021; 93(2): 1099 doi: 10.1002/jmv.26404
11
Qigai He, Kooi Hoong Chong, Hiok Hee Chng, Bernard Leung, Ai Ee Ling, Ting Wei, Shzu-Wei Chan, Eng Eong Ooi, Jimmy Kwang. Development of a Western Blot Assay for Detection of Antibodies against Coronavirus Causing Severe Acute Respiratory SyndromeClinical and Vaccine Immunology 2004; 11(2): 417 doi: 10.1128/CDLI.11.2.417-422.2004
12
Cecilia Cheng, Mike W. L. Cheung. Psychological Responses to Outbreak of Severe Acute Respiratory Syndrome: A Prospective, Multiple Time‐Point StudyJournal of Personality 2005; 73(1): 261 doi: 10.1111/j.1467-6494.2004.00310.x
13
J.W. Tang, R.C.W. Chan. Severe acute respiratory syndrome (SARS) in intensive care units (ICUs): limiting the risk to healthcare workersCurrent Anaesthesia & Critical Care 2004; 15(3): 143 doi: 10.1016/j.cacc.2004.05.003
14
Kurt Bedell, Adam H. Buchaklian, Stanley Perlman. Efficacy of an Automated Multiple Emitter Whole-Room Ultraviolet-C Disinfection System Against Coronaviruses MHV and MERS-CoVInfection Control & Hospital Epidemiology 2016; 37(5): 598 doi: 10.1017/ice.2015.348
15
Hawraa Issa, Ali H. Eid, Bassam Berry, Vahideh Takhviji, Abbas Khosravi, Sarah Mantash, Rawan Nehme, Rawan Hallal, Hussein Karaki, Kawthar Dhayni, Wissam H. Faour, Firas Kobeissy, Ali Nehme, Kazem Zibara. Combination of Angiotensin (1-7) Agonists and Convalescent Plasma as a New Strategy to Overcome Angiotensin Converting Enzyme 2 (ACE2) Inhibition for the Treatment of COVID-19Frontiers in Medicine 2021; 8 doi: 10.3389/fmed.2021.620990
16
Seanantha S. Baros‐Steyl, Saba Al Heialy, Ahlam H. Semreen, Mohammad H. Semreen, Jonathan M. Blackburn, Nelson C. Soares. A review of mass spectrometry‐based analyses to understand COVID‐19 convalescent plasma mechanisms of actionPROTEOMICS 2022; 22(18) doi: 10.1002/pmic.202200118
17
John Mair-Jenkins, Maria Saavedra-Campos, J. Kenneth Baillie, Paul Cleary, Fu-Meng Khaw, Wei Shen Lim, Sophia Makki, Kevin D. Rooney, Jonathan S. Nguyen-Van-Tam, Charles R. Beck. The Effectiveness of Convalescent Plasma and Hyperimmune Immunoglobulin for the Treatment of Severe Acute Respiratory Infections of Viral Etiology: A Systematic Review and Exploratory Meta-analysisJournal of Infectious Diseases 2015; 211(1): 80 doi: 10.1093/infdis/jiu396
18
M.K. Verma, Y.K. Verma, H.S. Mann, Thomas Briese, Rashmi Chowdhary. Advanced Biosensors for Virus Detection2022; : 19 doi: 10.1016/B978-0-12-824494-4.00019-9
19
Mohamad Hesam Shahrajabian, Wenli Sun, Qi Cheng. Product of natural evolution (SARS, MERS, and SARS-CoV-2); deadly diseases, from SARS to SARS-CoV-2Human Vaccines & Immunotherapeutics 2021; 17(1): 62 doi: 10.1080/21645515.2020.1797369
20
Golbarg Rahimi, Bahareh Rahimi, Mohammad Panahi, Shadi Abkhiz, Neda Saraygord-Afshari, Morteza Milani, Effat Alizadeh. An overview of Betacoronaviruses-associated severe respiratory syndromes, focusing on sex-type-specific immune responsesInternational Immunopharmacology 2021; 92: 107365 doi: 10.1016/j.intimp.2021.107365
21
Qing-He Nie, Xin-Dong Luo, Jian-Zhong Zhang, Qin Su. Current status of severe acute respiratory syndrome in ChinaWorld Journal of Gastroenterology 2003; 9(8): 1635-1645 doi: 10.3748/wjg.v9.i8.1635
22
Clinical Signs, Laboratory Diagnosis and Treatments Involved in Corona Viruses-19Al Mustansiriyah Journal of Pharmaceutical Sciences 2022; 21(1): 10 doi: 10.32947/ajps.v21i1.776
23
Sayyid Abdul Basith, Arunkumar Chandrasekhar. COVID-19 clinical waste reuse: A triboelectric touch sensor for IoT-cloud supported smart hand sanitizer dispenserNano Energy 2023; 108: 108183 doi: 10.1016/j.nanoen.2023.108183
24
Jin Gu, Aiwen Wu, Jiyou Li, Xiaopeng Zhang, Jian Fang, Ming Li, Yunfeng Yao, Yang Ke, Jiang Gu, Mingzhe Chen, Weicheng You. An assessment of World Health Organization criteria for severe acute respiratory syndrome in patients with cancerCancer 2004; 100(7): 1374 doi: 10.1002/cncr.20141
25
Sixten Körper, Bernd Jahrsdörfer, Thomas Appl, Harald Klüter, Erhard Seifried, Hubert Schrezenmeier. Rekonvaleszentenplasma zur Behandlung von schwerem COVID-19: Rationale und Design einer randomisierten, offenen klinischen Studie von Rekonvaleszentenplasma verglichen mit bestmöglicher supportiver Behandlung (CAPSID-Studie)Transfusionsmedizin - Immunhämatologie · Hämotherapie · Transplantationsimmunologie · Zelltherapie 2020; 10(03): 143 doi: 10.1055/a-1090-0408